fix endpoint_kafka
This commit is contained in:
parent
94efb79eab
commit
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@ -1,4 +1,3 @@
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%%%-------------------------------------------------------------------
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%%%-------------------------------------------------------------------
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%%% @author aresei
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%%% @author aresei
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%%% @copyright (C) 2023, <COMPANY>
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%%% @copyright (C) 2023, <COMPANY>
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@ -10,201 +9,227 @@
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-module(endpoint_kafka).
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-module(endpoint_kafka).
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-include("endpoint.hrl").
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-include("endpoint.hrl").
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-behaviour(gen_server).
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-behaviour(gen_statem).
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%% API
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%% API
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-export([start_link/2]).
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-export([start_link/2]).
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%% gen_server callbacks
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%% gen_statem callbacks
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-export([init/1, handle_call/3, handle_cast/2, handle_info/2, terminate/2, code_change/3]).
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-export([callback_mode/0, init/1, terminate/3, code_change/4]).
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-export([disconnected/3, connected/3]).
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%% 消息重发间隔
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%% 消息重发间隔
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-define(RETRY_INTERVAL, 5000).
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-define(RETRY_INTERVAL, 5000).
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-define(DISCONNECTED, disconnected).
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-define(CONNECTED, connected).
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-record(state, {
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-record(state, {
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endpoint :: #endpoint{},
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endpoint :: #endpoint{},
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buffer :: endpoint_buffer:buffer(),
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buffer :: endpoint_buffer:buffer(),
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client_id :: atom(),
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client_id :: atom(),
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client_pid :: undefined | pid(),
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client_pid :: undefined | pid()
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status = ?DISCONNECTED
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}).
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}).
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-type kafka_state() :: disconnected | connected.
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%%%===================================================================
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%%%===================================================================
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%%% API
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%%% API
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%%%===================================================================
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%%%===================================================================
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%% @doc Creates a gen_statem process which calls Module:init/1 to
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-spec start_link(LocalName :: atom(), Endpoint :: #endpoint{}) ->
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%% initialize. To ensure a synchronized start-up procedure, this
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{ok, pid()} | ignore | {error, term()}.
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%% function does not return until Module:init/1 has returned.
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start_link(LocalName, Endpoint = #endpoint{}) when is_atom(LocalName) ->
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start_link(LocalName, Endpoint = #endpoint{}) when is_atom(LocalName) ->
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gen_server:start_link({local, LocalName}, ?MODULE, [Endpoint], []).
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gen_statem:start_link({local, LocalName}, ?MODULE, [Endpoint], []).
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%%%===================================================================
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%%%===================================================================
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%%% gen_statem callbacks
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%%% gen_statem callbacks
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%%%===================================================================
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%%%===================================================================
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%% @private
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-spec callback_mode() -> state_functions.
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%% @doc Whenever a gen_statem is started using gen_statem:start/[3,4] or
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callback_mode() ->
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%% gen_statem:start_link/[3,4], this function is called by the new
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state_functions.
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%% process to initialize.
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-spec init(term()) -> gen_statem:init_result(kafka_state(), #state{}).
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init([Endpoint = #endpoint{id = Id, matcher = Matcher}]) ->
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init([Endpoint = #endpoint{id = Id, matcher = Matcher}]) ->
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ok = iot_log:set_metadata(),
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ok = iot_log:set_metadata(),
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endpoint_subscription:subscribe(Matcher, self()),
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erlang:process_flag(trap_exit, true),
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erlang:process_flag(trap_exit, true),
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%% 创建转发器, 避免阻塞当前进程的创建,因此采用了延时初始化的机制
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ok = endpoint_subscription:subscribe(Matcher, self()),
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erlang:start_timer(0, self(), connect),
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%% 初始化存储
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Buffer = endpoint_buffer:new(Endpoint, 10),
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Buffer = endpoint_buffer:new(Endpoint, 10),
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ClientId = list_to_atom("brod_client:" ++ integer_to_list(Id)),
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ClientId = list_to_atom("brod_client:" ++ integer_to_list(Id)),
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{ok, disconnected, #state{endpoint = Endpoint, buffer = Buffer, client_id = ClientId},
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[{state_timeout, 0, connect}]}.
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{ok, #state{endpoint = Endpoint, buffer = Buffer, status = ?DISCONNECTED, client_id = ClientId}}.
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-spec disconnected(gen_statem:event_type(), term(), #state{}) ->
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gen_statem:event_handler_result(kafka_state(), #state{}).
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%% @private
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disconnected({call, From}, get_stat, State = #state{buffer = Buffer}) ->
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%% @doc Handling call messages
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reply_stat(From, Buffer, State);
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-spec(handle_call(Request :: term(), From :: {pid(), Tag :: term()},
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disconnected(cast, {forward, Metric}, State = #state{buffer = Buffer}) ->
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State :: #state{}) ->
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forward_metric(Metric, Buffer, State);
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{reply, Reply :: term(), NewState :: #state{}} |
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disconnected(cast, cleanup, State = #state{buffer = Buffer}) ->
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{reply, Reply :: term(), NewState :: #state{}, timeout() | hibernate} |
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cleanup_buffer(Buffer, State);
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{noreply, NewState :: #state{}} |
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disconnected(cast, {reload, NEndpoint = #endpoint{matcher = NMatcher}},
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{noreply, NewState :: #state{}, timeout() | hibernate} |
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State = #state{endpoint = #endpoint{matcher = Matcher}, client_id = ClientId}) ->
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{stop, Reason :: term(), Reply :: term(), NewState :: #state{}} |
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reload_endpoint(Matcher, NMatcher, ClientId, NEndpoint, State);
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{stop, Reason :: term(), NewState :: #state{}}).
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disconnected(state_timeout, connect, State) ->
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handle_call(get_stat, _From, State = #state{buffer = Buffer}) ->
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try_connect(State);
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Stat = endpoint_buffer:stat(Buffer),
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disconnected(info, {next_data, _Id, _Tuple}, State) ->
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{reply, {ok, Stat}, State}.
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{keep_state, State};
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disconnected(info, {ack, Id}, State = #state{buffer = Buffer}) ->
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%% @private
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ack_buffer(Id, Buffer, State);
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%% @doc Handling cast messages
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disconnected(info, Info, State) ->
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-spec(handle_cast(Request :: term(), State :: #state{}) ->
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unknown_info(Info, disconnected, State);
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{noreply, NewState :: #state{}} |
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disconnected(EventType, EventContent, State) ->
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{noreply, NewState :: #state{}, timeout() | hibernate} |
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unknown_event(EventType, EventContent, disconnected, State).
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{stop, Reason :: term(), NewState :: #state{}}).
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handle_cast({forward, Metric}, State = #state{buffer = Buffer}) ->
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NBuffer = endpoint_buffer:append(Metric, Buffer),
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{noreply, State#state{buffer = NBuffer}};
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handle_cast({reload, NEndpoint = #endpoint{matcher = NMatcher}}, State = #state{endpoint = #endpoint{matcher = Matcher}, client_id = ClientId}) ->
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ensure_subscription(Matcher, NMatcher),
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stop_kafka_client(ClientId),
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retry_connect(),
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{noreply, State#state{endpoint = NEndpoint, client_pid = undefined, status = ?DISCONNECTED}};
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handle_cast(cleanup, State = #state{buffer = Buffer}) ->
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endpoint_buffer:cleanup(Buffer),
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{noreply, State}.
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%% @private
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%% @doc Handling all non call/cast messages
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-spec(handle_info(Info :: timeout() | term(), State :: #state{}) ->
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{noreply, NewState :: #state{}} |
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{noreply, NewState :: #state{}, timeout() | hibernate} |
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{stop, Reason :: term(), NewState :: #state{}}).
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handle_info({timeout, _, connect}, State = #state{buffer = Buffer, status = ?DISCONNECTED, client_id = ClientId,
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endpoint = #endpoint{title = Title, config = #kafka_endpoint{sasl_config = SaslConfig, bootstrap_servers = BootstrapServers, topic = Topic}}}) ->
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logger:debug("[endpoint_kafka] endpoint: ~p, create postman", [Title]),
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BaseConfig = [
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{reconnect_cool_down_seconds, 5},
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{socket_options, [{keepalive, true}]}
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],
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ClientConfig = case SaslConfig of
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{Mechanism, Username, Password} ->
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[{sasl, {Mechanism, Username, Password}}|BaseConfig];
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undefined ->
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BaseConfig
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end,
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case catch brod:start_link_client(BootstrapServers, ClientId, ClientConfig) of
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{ok, ClientPid} ->
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case brod:start_producer(ClientId, Topic, _ProducerConfig = []) of
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ok ->
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NBuffer = endpoint_buffer:trigger_next(Buffer),
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{noreply, State#state{buffer = NBuffer, client_pid = ClientPid, status = ?CONNECTED}};
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{error, Reason} ->
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logger:debug("[endpoint_kafka] start_producer: ~p, get error: ~p", [ClientId, Reason]),
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brod:stop_client(ClientId),
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retry_connect(),
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{noreply, State#state{status = ?DISCONNECTED, client_pid = undefined}}
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end;
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Error ->
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logger:debug("[endpoint_kafka] start_client: ~p, get error: ~p", [ClientId, Error]),
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retry_connect(),
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{noreply, State#state{status = ?DISCONNECTED, client_pid = undefined}}
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end;
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%% 离线时,忽略数据发送逻辑
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handle_info({next_data, _Id, _Tuple}, State = #state{status = ?DISCONNECTED}) ->
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{noreply, State};
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%% 发送数据到mqtt服务器
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handle_info({next_data, Id, Metric}, State = #state{status = ?CONNECTED, client_pid = ClientPid,
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endpoint = #endpoint{config = #kafka_endpoint{topic = Topic}}, client_id = ClientId}) ->
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-spec connected(gen_statem:event_type(), term(), #state{}) ->
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gen_statem:event_handler_result(kafka_state(), #state{}).
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connected({call, From}, get_stat, State = #state{buffer = Buffer}) ->
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reply_stat(From, Buffer, State);
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connected(cast, {forward, Metric}, State = #state{buffer = Buffer}) ->
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forward_metric(Metric, Buffer, State);
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connected(cast, cleanup, State = #state{buffer = Buffer}) ->
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cleanup_buffer(Buffer, State);
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connected(cast, {reload, NEndpoint = #endpoint{matcher = NMatcher}},
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State = #state{endpoint = #endpoint{matcher = Matcher}, client_id = ClientId}) ->
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reload_endpoint(Matcher, NMatcher, ClientId, NEndpoint, State);
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connected(info, {next_data, Id, Metric},
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State = #state{
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client_pid = ClientPid,
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client_id = ClientId,
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endpoint = #endpoint{config = #kafka_endpoint{topic = Topic}}
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}) ->
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ReceiverPid = self(),
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ReceiverPid = self(),
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AckCb = fun(Partition, BaseOffset) ->
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AckCb = fun(Partition, BaseOffset) ->
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logger:debug("[endpoint_kafka] ack partion: ~p, offset: ~p", [Partition, BaseOffset]),
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logger:debug("[endpoint_kafka] ack partion: ~p, offset: ~p", [Partition, BaseOffset]),
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ReceiverPid ! {ack, Id}
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ReceiverPid ! {ack, Id}
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end,
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end,
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case catch brod:produce_cb(ClientPid, Topic, random, <<>>, Metric, AckCb) of
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case catch brod:produce_cb(ClientPid, Topic, random, <<>>, Metric, AckCb) of
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{ok, _CallRef} ->
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{ok, _CallRef} ->
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{noreply, State};
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{keep_state, State};
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{ok, _CallRef, _ProducerPid} ->
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{ok, _CallRef, _ProducerPid} ->
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{noreply, State};
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{keep_state, State};
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{error, Reason} ->
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{error, Reason} ->
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logger:warning("[endpoint_kafka] produce topic: ~p, get error: ~p", [Topic, Reason]),
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logger:warning("[endpoint_kafka] produce topic: ~p, get error: ~p", [Topic, Reason]),
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stop_kafka_client(ClientId),
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stop_kafka_client(ClientId),
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retry_connect(),
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{next_state, disconnected, State#state{client_pid = undefined},
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{noreply, State#state{client_pid = undefined, status = ?DISCONNECTED}};
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[{state_timeout, ?RETRY_INTERVAL, connect}]};
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{'EXIT', Reason} ->
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{'EXIT', Reason} ->
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logger:warning("[endpoint_kafka] produce topic: ~p, exit with reason: ~p", [Topic, Reason]),
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logger:warning("[endpoint_kafka] produce topic: ~p, exit with reason: ~p", [Topic, Reason]),
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stop_kafka_client(ClientId),
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stop_kafka_client(ClientId),
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retry_connect(),
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{next_state, disconnected, State#state{client_pid = undefined},
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{noreply, State#state{client_pid = undefined, status = ?DISCONNECTED}}
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[{state_timeout, ?RETRY_INTERVAL, connect}]}
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end;
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end;
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connected(info, {ack, Id}, State = #state{buffer = Buffer}) ->
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handle_info({ack, Id}, State = #state{buffer = Buffer}) ->
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ack_buffer(Id, Buffer, State);
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NBuffer = endpoint_buffer:ack(Id, Buffer),
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connected(info, {'EXIT', ClientPid, Reason},
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{noreply, State#state{buffer = NBuffer}};
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State = #state{client_pid = ClientPid, endpoint = #endpoint{title = Title}}) ->
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%% postman进程挂掉时,重新建立新的
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handle_info({'EXIT', ClientPid, Reason}, State = #state{client_pid = ClientPid, endpoint = #endpoint{title = Title}}) ->
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logger:warning("[endpoint_kafka] endpoint: ~p, conn pid exit with reason: ~p", [Title, Reason]),
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logger:warning("[endpoint_kafka] endpoint: ~p, conn pid exit with reason: ~p", [Title, Reason]),
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retry_connect(),
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{next_state, disconnected, State#state{client_pid = undefined},
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{noreply, State#state{client_pid = undefined, status = ?DISCONNECTED}};
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[{state_timeout, ?RETRY_INTERVAL, connect}]};
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connected(info, Info, State) ->
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unknown_info(Info, connected, State);
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connected(EventType, EventContent, State) ->
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unknown_event(EventType, EventContent, connected, State).
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handle_info(Info, State = #state{status = Status}) ->
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-spec terminate(term(), kafka_state(), #state{}) -> term().
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logger:warning("[endpoint_kafka] unknown message: ~p, status: ~p", [Info, Status]),
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terminate(Reason, _StateName, #state{endpoint = #endpoint{title = Title}, buffer = Buffer, client_id = ClientId}) ->
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{noreply, State}.
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%% @private
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%% @doc This function is called by a gen_server when it is about to
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%% terminate. It should be the opposite of Module:init/1 and do any
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%% necessary cleaning up. When it returns, the gen_server terminates
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%% with Reason. The return value is ignored.
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-spec(terminate(Reason :: (normal | shutdown | {shutdown, term()} | term()),
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State :: #state{}) -> term()).
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terminate(Reason, #state{endpoint = #endpoint{title = Title}, buffer = Buffer, client_id = ClientId}) ->
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logger:debug("[endpoint_kafka] endpoint: ~p, terminate with reason: ~p", [Title, Reason]),
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logger:debug("[endpoint_kafka] endpoint: ~p, terminate with reason: ~p", [Title, Reason]),
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stop_kafka_client(ClientId),
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stop_kafka_client(ClientId),
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endpoint_buffer:cleanup(Buffer),
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endpoint_buffer:cleanup(Buffer),
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ok.
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ok.
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%% @private
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-spec code_change(term() | {down, term()}, kafka_state(), #state{}, term()) ->
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%% @doc Convert process state when code is changed
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{ok, kafka_state(), #state{}} | {error, term()}.
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-spec(code_change(OldVsn :: term() | {down, term()}, State :: #state{},
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code_change(_OldVsn, StateName, State = #state{}, _Extra) ->
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Extra :: term()) ->
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{ok, StateName, State}.
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{ok, NewState :: #state{}} | {error, Reason :: term()}).
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code_change(_OldVsn, State = #state{}, _Extra) ->
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{ok, State}.
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%%%===================================================================
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%%%===================================================================
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%%% Internal functions
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%%% Internal functions
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%%%===================================================================
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%%%===================================================================
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retry_connect() ->
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-spec reply_stat(gen_statem:from(), endpoint_buffer:buffer(), #state{}) ->
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erlang:start_timer(?RETRY_INTERVAL, self(), connect).
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gen_statem:event_handler_result(kafka_state(), #state{}).
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reply_stat(From, Buffer, State) ->
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Stat = endpoint_buffer:stat(Buffer),
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{keep_state, State, [{reply, From, {ok, Stat}}]}.
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-spec forward_metric(binary(), endpoint_buffer:buffer(), #state{}) ->
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gen_statem:event_handler_result(kafka_state(), #state{}).
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forward_metric(Metric, Buffer, State) ->
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NBuffer = endpoint_buffer:append(Metric, Buffer),
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{keep_state, State#state{buffer = NBuffer}}.
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-spec cleanup_buffer(endpoint_buffer:buffer(), #state{}) ->
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gen_statem:event_handler_result(kafka_state(), #state{}).
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cleanup_buffer(Buffer, _State) ->
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endpoint_buffer:cleanup(Buffer),
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keep_state_and_data.
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-spec ack_buffer(integer(), endpoint_buffer:buffer(), #state{}) ->
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gen_statem:event_handler_result(kafka_state(), #state{}).
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ack_buffer(Id, Buffer, State) ->
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NBuffer = endpoint_buffer:ack(Id, Buffer),
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{keep_state, State#state{buffer = NBuffer}}.
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-spec reload_endpoint(binary(), binary(), atom(), #endpoint{}, #state{}) ->
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gen_statem:event_handler_result(kafka_state(), #state{}).
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reload_endpoint(Matcher, NMatcher, ClientId, NEndpoint, State = #state{}) ->
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ensure_subscription(Matcher, NMatcher),
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stop_kafka_client(ClientId),
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{next_state, disconnected, State#state{endpoint = NEndpoint, client_pid = undefined},
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[{state_timeout, 0, connect}]}.
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-spec try_connect(#state{}) -> gen_statem:event_handler_result(kafka_state(), #state{}).
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try_connect(State = #state{
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buffer = Buffer,
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client_id = ClientId,
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endpoint = #endpoint{
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title = Title,
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config = #kafka_endpoint{
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sasl_config = SaslConfig,
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bootstrap_servers = BootstrapServers,
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topic = Topic
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}
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}
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}) ->
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||||||
|
logger:debug("[endpoint_kafka] endpoint: ~p, create postman", [Title]),
|
||||||
|
BaseConfig = [
|
||||||
|
{reconnect_cool_down_seconds, 5},
|
||||||
|
{socket_options, [{keepalive, true}]}
|
||||||
|
],
|
||||||
|
ClientConfig = case SaslConfig of
|
||||||
|
{Mechanism, Username, Password} ->
|
||||||
|
[{sasl, {Mechanism, Username, Password}} | BaseConfig];
|
||||||
|
undefined ->
|
||||||
|
BaseConfig
|
||||||
|
end,
|
||||||
|
case catch brod:start_link_client(BootstrapServers, ClientId, ClientConfig) of
|
||||||
|
{ok, ClientPid} ->
|
||||||
|
case brod:start_producer(ClientId, Topic, []) of
|
||||||
|
ok ->
|
||||||
|
NBuffer = endpoint_buffer:trigger_n(Buffer),
|
||||||
|
{next_state, connected, State#state{buffer = NBuffer, client_pid = ClientPid}};
|
||||||
|
{error, Reason} ->
|
||||||
|
logger:debug("[endpoint_kafka] start_producer: ~p, get error: ~p", [ClientId, Reason]),
|
||||||
|
stop_kafka_client(ClientId),
|
||||||
|
{keep_state, State#state{client_pid = undefined},
|
||||||
|
[{state_timeout, ?RETRY_INTERVAL, connect}]}
|
||||||
|
end;
|
||||||
|
Error ->
|
||||||
|
logger:debug("[endpoint_kafka] start_client: ~p, get error: ~p", [ClientId, Error]),
|
||||||
|
{keep_state, State#state{client_pid = undefined},
|
||||||
|
[{state_timeout, ?RETRY_INTERVAL, connect}]}
|
||||||
|
end.
|
||||||
|
|
||||||
|
-spec unknown_info(term(), kafka_state(), #state{}) ->
|
||||||
|
gen_statem:event_handler_result(kafka_state(), #state{}).
|
||||||
|
unknown_info(Info, StateName, State) ->
|
||||||
|
logger:warning("[endpoint_kafka] unknown message: ~p, status: ~p", [Info, StateName]),
|
||||||
|
{keep_state, State}.
|
||||||
|
|
||||||
|
-spec unknown_event(gen_statem:event_type(), term(), kafka_state(), #state{}) ->
|
||||||
|
gen_statem:event_handler_result(kafka_state(), #state{}).
|
||||||
|
unknown_event(EventType, EventContent, StateName, State) ->
|
||||||
|
logger:warning("[endpoint_kafka] unknown event: ~p, content: ~p, status: ~p", [EventType, EventContent, StateName]),
|
||||||
|
{keep_state, State}.
|
||||||
|
|
||||||
-spec ensure_subscription(binary(), binary()) -> ok.
|
-spec ensure_subscription(binary(), binary()) -> ok.
|
||||||
ensure_subscription(Matcher, Matcher) ->
|
ensure_subscription(Matcher, Matcher) ->
|
||||||
|
|||||||
Loading…
x
Reference in New Issue
Block a user